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Structural Mismatch Theory

Jincheng Zhang2026-08-20Zenodo (CERN European Organization for Nuclear Research)

This paper introduces and investigates a novel theoretical framework called Structural Mismatch Theory. The central notion is the mismatch measure M(A,B) defined for any pair of abstract structures A and B. We explore the circumstances under which the mismatch vanishes, i.e., M(A,B)=0, and examine whether the mismatch…

Quasicrystal Structures and PropertiesMorphological variations and asymmetryStructural Analysis and Optimization

FORMULATION DEVELOPMENT AND EVALUATION OF FLUVESTRANT SOLID LIPID NANOPARTICLES

Maruthoti Sivashankara Varaprasad*, Sravani Boyapati, Dr. Purna Naga Sree Kurre2026-08-20Zenodo (CERN European Organization for Nuclear Research)

Treating human non-small cell lung cancer effectively remains a significant challenge due to issues, such as low absorption, frequent dosing, and side effects associated with traditional anti-cancer drugs. This study focuses at solid lipid nanoparticles (SLNs) as a new way to deliver drugs. These nanoparticles could p…

Advancements in Transdermal Drug DeliveryNanoparticle-Based Drug DeliveryCancer Research and Treatment

Computational Structural Thermodynamics

Jincheng Zhang2026-08-20Zenodo (CERN European Organization for Nuclear Research)

This paper proposes a novel framework for understanding complex computational systems, termed Computational Structural Thermodynamics. It moves beyond simply applying established physics concepts to computer science, aiming to establish a formal state variable system for these systems. This system encompasses quantiti…

Model Reduction and Neural NetworksControl and Stability of Dynamical SystemsMachine Learning in Materials Science

Controlling catalyst agglomeration in high-density unordered III-V nanowire growth using Au colloid solutions

Chris Yannic Bohlemann、Pavithira Manoharan、H. Reichel 等 7 位作者2026-08-20arXiv (Cornell University)

III-V semiconductor nanowires (NWs) are a promising platform for optoelectronic and photoelectrochemical applications, where device performance strongly depends on NW density and spatial arrangement. While ordered arrays provide precise control, their fabrication requires complex and costly lithographic techniques. Un…

Quantum Dots Synthesis And PropertiesNanomaterials and Printing TechnologiesNanowire Synthesis and Applications

DEVELOPING EFFICIENT AND STABLE SEMITRANSPARENT PEROVSKITE SOLAR MODULES FOR TANDEMS

Hangyu Gu2026-08-20UNC Libraries

Increasing the efficiency and stability of solar modules is very important to reduce their levelized cost. Stacking semitransparent perovskite solar cells with silicon solar cells to form tandems presents the possibility of higher efficiency than single-junction solar cells. The semitransparent top perovskite soar cel…

Chemical and Physical Properties of MaterialsPerovskite Materials and Applicationssolar cell performance optimization

Observer Position, Topological Suture, and Dual Gravity in UCT Quasicrystalline Cosmology v6.1.4

Pascal Moulin2026-08-20Zenodo (CERN European Organization for Nuclear Research)

🇬🇧 Abstract (English) Title: Observer Position, Topological Suture, and Dual Gravity in UCT Quasicrystalline Cosmology v6.1.4 Abstract (English) Within the framework of Unification Topological Cosmology (UCT v6.1.4), the macroscopic structure of spacetime is modeled by the Poincaré dodecahedral space $\mathcal{M}_{\te…

Galaxies: Formation, Evolution, PhenomenaQuasicrystal Structures and PropertiesCosmology and Gravitation Theories

Plant‐Derived Byproducts for Probiotic Encapsulation: A Composition–Microstructure–Function Review

Khadijat Oladayo Ganiyu、Jian Zhao2026-08-20Food Frontiers

ABSTRACT Probiotic delivery in foods is limited by viability losses during processing, storage, and gastrointestinal (GI) transit. Encapsulation may improve probiotic survival, but its effectiveness depends on both the carrier matrix and the surrounding food environment. This review examines plant‐derived byproducts,…

Nanocomposite Films for Food PackagingFood composition and propertiesProbiotics and Fermented Foods

Golden Angle: The Golden Ratio's Optimal Phyllotaxis Spiral Packing Angle — E8 Intelligence Research

Andrew Stewart Caldin2026-08-20Zenodo (CERN European Organization for Nuclear Research)

FINDING: The golden angle (≈137.51°) arises from the golden ratio and governs phyllotaxis spiral packing efficiency. | MATH: Golden angle = 360° × (1 - 1/φ) = 360° × (2 - φ) ≈ 137.507764°; φ = (1+√5)/2 ≈ 1.618034; divergence angle = 360°/φ² ≈ 137.51°; Fibonacci numbers approximate φ in successive ratios. | CONNECTION:…

Advanced Mathematical Theories and ApplicationsQuasicrystal Structures and PropertiesGraph theory and applications

Transient lateral impact response of pressurised composite hoses

Cameron David Stewart2026-08-20Open Access Institutional Repository at Robert Gordon University (Robert Gordon University)

In the Oil Industry, where engineering challenges are continuously redefined, composite materials have grown in acceptance and stature as viable alternatives to traditional materials. More particularly, composites are used in the hydraulic hoses which operate a large piece of safety equipment called the Blow-Out Preve…

Engineering and Agricultural InnovationsPolymer Science and PVCEnvironmental and Industrial Safety

From Microscopic Capability to Collective Function: An Evidential Ladder and Reducibility Audit for Interacting Units

Kai Wang2026-08-20Zenodo (CERN European Organization for Nuclear Research)

As active and physical-learning systems acquire sensing, memory, communication, internal regulation, and learning, richer microscopic architectures increasingly produce different macroscopic behavior. The central inferential problem is not whether such mechanisms can change collective dynamics, but what level of claim…

Neural Networks and Reservoir ComputingModular Robots and Swarm IntelligenceMachine Learning in Materials Science

Mathematical Origin Theory

Jincheng Zhang2026-08-20Zenodo (CERN European Organization for Nuclear Research)

This paper proposes a unifying framework, termed the Mathematical Origin Theory, to explain why certain mathematical structures—particularly groups, spaces, and number systems—emerge repeatedly across diverse domains of mathematics and science. By formulating the Origin Principle, we identify fundamental properties an…

Quasicrystal Structures and PropertiesMathematics Education and Teaching TechniquesHistory and Theory of Mathematics

Fatigue and biological behavior of Ti6Al4V reentrant auxetics manufactured by Laser Powder Bed Fusion

Aysha Shawkat Hasan Hasan、Beyza Gavcar、Safa Şenaysoy 等 6 位作者2026-08-20Mechanics of Advanced Materials and Structures

The current study investigates the biological response and fatigue behavior of reentrant Ti6Al4V metamaterials made using Laser Powder Bed Fusion (L-PBF). Finite element analysis of reentrant structures with eight different auxetic configurations was performed to determine optimal designs. Reduced maximum von Mises st…

Cellular and Composite StructuresTitanium Alloys Microstructure and PropertiesBone Tissue Engineering Materials

Predicting antibacterial activity of silver nanoparticles using physicochemical descriptors

Worku Dagne、Amare Benor、Getachew Tizazu2026-08-20iScience

Quantitative prediction of antibacterial activity in green-synthesized silver nanoparticles (AgNPs) is critical for developing effective and sustainable antimicrobial agents, particularly against multidrug-resistant bacteria. However, variability in synthesis protocols, characterization methods, and biological assays,…

Machine Learning in Materials ScienceCell Image Analysis TechniquesComputational Drug Discovery Methods

Chitosan microcapsules for controlled fertiliser delivery

Christopher Thomas Hill2026-08-20Monash University

This thesis details the use of chitosan, a semisynthetic biopolymer, to create emulsion-templated microcapsules. These capsules entail use of specific crosslinker and silica to strengthen chitosan emulsion shells, thus making capsules. Through this work we have made strides in understanding the solution behaviour of c…

Pickering emulsions and particle stabilizationNanocomposite Films for Food PackagingPolymer-Based Agricultural Enhancements

An Implementation of the Convolutional Neural Network Algorithm for Detecting Crack in 150 kV Transmission Line Insulator

Andhika Rizki Priambodo、Ronny Mardiyanto、Heri Suryoatmojo2026-08-20JAREE (Journal on Advanced Research in Electrical Engineering)

High Voltage Overhead Transmission Lines require routine inspections to detect potential fault and ensure reliable operation. These inspections are conducted through manual tower climbing, known as Climb Up Inspection (CUI). With the advancement of technology, drones—Unmanned Aerial Vehicles (UAVs)—have increasingly b…

High voltage insulation and dielectric phenomenaThermal Analysis in Power TransmissionPower Line Inspection Robots

A Unified Theoretical Framework for Photoemission and Its Inverse: Reciprocity, Spin, and Photon Polarization

F. O. Schumann、Jürgen Henk2026-08-20arXiv (Cornell University)

We present a unified theoretical framework for spin- and angle-resolved photoemission spectroscopy (SARPES) and its inverse process (SARIPES), treating both on an equal footing. The formulation is based on a response tensor that encodes the reciprocity between the two processes. We show that polarization tomography wi…

Photocathodes and Microchannel PlatesElectron and X-Ray Spectroscopy TechniquesAdvanced Electron Microscopy Techniques and Applications

Computational Phase Memory Theorem

Jincheng Zhang2026-08-20Zenodo (CERN European Organization for Nuclear Research)

This paper explores the theoretical framework of the Computational Phase Memory Theorem, proposing a novel approach to understanding computation based on the concept of 'phase memory'. The core idea posits that a system can exhibit a difference in its output despite identical current inputs if and only if the discrepa…

Neural Networks and Reservoir ComputingFerroelectric and Negative Capacitance DevicesSolidification and crystal growth phenomena

Universal Mathematical Resonance

Jincheng Zhang2026-08-20Zenodo (CERN European Organization for Nuclear Research)

A recurrent theme in disparate branches of mathematics is the emergence of identical structural patterns: cyclic phenomena in number theory, reflective symmetries in geometry, and eigenvalue spectra in analysis. This paper proposes that these phenomena are manifestations of a single underlying principle, termed Univer…

History and Theory of MathematicsQuasicrystal Structures and PropertiesSpectral Theory in Mathematical Physics